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are not treated more land will be required to maintain food production. Adequate and timely input of the right type of fertilizers and target crop management (e.g. residues) can help to alleviate, or even
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algebra methods targeting large-scale HPC systems. Optimization of linear algebra libraries for modern architectures (e.g., GPUs). Exploration of linear algebra methods in computational physics applications
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, XPS, etc.) to confirm structural, morphological, and magnetic properties. Optimize synthesis routes for reproducibility, scalability, and performance tailored to target applications. Collaborate with
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for reproducibility, scalability, and performance tailored to target applications. Collaborate with process engineers, material scientists, and application specialists to integrate nanoparticles into functional systems
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rigorous work ethic. He/she should be able to deliver outputs (group meetings, scientific publications, presentations, and the dissertation) in the targeted timeframes, and according to the international
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, presentations, and the dissertation) in the targeted timeframes, and according to the international standards of excellence. Other specific criteria include: PhD degree in organic chemistry, polymer science
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of the successful candidate. This position targets internationally renowned candidates with proven Metallogeny, Ore Mineralogy and Isotope Geochemistry preferably in combined field and analytical research applied
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the understanding of Enhancing soil C sequestration in pasture systems, a key mitigation option for countries targets under the UN-Paris Agreement. The postdoctoral fellow will be trained at the USP/ESALQ Carbon
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algebra algorithms, including sparse/dense linear systems solving and preconditioners. Scalable implementations of linear algebra methods targeting large-scale HPC systems. Optimization of linear algebra
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targets under the UN-Paris Agreement. The postdoctoral fellow will be trained at the USP/ESALQ Carbon Center in Brazil, (Sao Paulo State) under the supervision of Professor Carlos Eduardo Pellegrino Cerri